Material processing engineering of national key discipline of Taiyuan University of Technology.

Material processing engineering is one of the three two disciplines of material science and engineering, and it is an applied technology discipline to study nano-material processing, surface modification of materials, new technologies of traditional material processing and new materials. The main research directions are as follows: 1. Synthesis and processing of nano-composite functional materials. This study focuses on "electroluminescent materials and their products, preparation and antibacterial mechanism of nano-antibacterial functional materials, preparation and properties of nano-carbon functional materials and nano-crystalline bulk materials". Starting with the preparation, structural characterization and performance test of materials, we can solve the physical and chemical problems in materials, explore the preparation and action mechanism of various materials, realize the functionalization of materials, and then make materials widely used in various fields. 2. New technology of plasma surface metallurgy. This research mainly focuses on "plasma surface metallurgy and properties of steel materials, surface modification and properties of titanium alloys, preparation and properties of thin films" and other advanced surface modification technologies, such as ion beam enhanced deposition, to prepare diffusion layers and thin film modified layers on metal surfaces. The microstructure and properties of the surface modified layer were studied, including tribological properties, film/substrate bonding strength, high temperature oxidation properties and electrochemical properties. Understand the applicable surface modification methods and conditions of different metal materials, and explore the correlation between the microstructure and properties of the modified layer of metal materials. 3. Preparation and processing of high strength light alloy. This study focuses on the industrialization of high-quality magnesium-aluminum alloy, high-strength magnesium alloy, high-temperature resistant titanium-aluminum alloy, nanocrystalline high-strength light alloy and their composites, and makes theoretical analysis and industrialization research on the preparation and processing of light-weight high-strength alloy; The preparation, processing, microstructure analysis, formation mechanism and performance test of nanocrystalline high strength light alloy and its composites were studied by equal channel angular extrusion combined with high resolution transmission electron microscope, and nanocrystalline light alloy and its composites with excellent properties were obtained. Excellent high-temperature cyclic oxidation resistance was obtained by siliconizing TiAl-based alloy. The subject of Material Processing Engineering of Taiyuan University of Technology 1986 awarded the master's degree, 1998 awarded the doctor's degree, and 200 1 was approved as a national key discipline. In 2003, it was approved to set up a post-doctoral research mobile station for the first-class discipline of materials science and engineering. There are 2/kloc-0 professors and 24 associate professors in this discipline, including 8 doctoral supervisors. At present, there are 0/2 doctoral students and 0/70 master students. There are 54 doctoral students and 57 master students/kloc-0. At present, this discipline undertakes the national "973" plan project 1, the national "863" special sub-project 1, the major research project of the National Natural Science Foundation 1, the National Outstanding Youth Fund 1, the international cooperation project of the National Natural Science Foundation 65438 and the general project of the National Natural Science Foundation 65438. In recent five years, he won five second prizes for scientific and technological progress in Shanxi Province and three third prizes for scientific and technological progress in Shanxi Province. * * * Published more than 700 papers, which were cited by SCI, EI and ISTP for more than 300 times, published 4 monographs 100, and applied for and authorized more than one patent100 of China, Japan and Korea. Dr. Xu Bingshe, academic leader, male, born in June 1955, professor of Taiyuan University of Technology, doctoral supervisor, winner of the National Outstanding Youth Fund in 2000. He is currently the vice president of Taiyuan University of Technology, the director of the Key Laboratory of New Material Interface Science and Engineering, the director of the Key Laboratory of Shanxi Material Interface, and the director of Shanxi New Material Engineering Technology Research Center. As a discipline leader, he is mainly engaged in scientific research work such as nano-carbon functional materials, photoelectric materials, nano-composite functional materials, and calculation and simulation of material interface structure. He has successively undertaken international, national, provincial and ministerial projects 17, such as the National "973" Plan, the National Major Basic Research Program Nano Project, the National Fund for Distinguished Young Scholars and the China-Japan International Cooperation and Exchange Project of the National Natural Science Foundation. He has published more than 500 papers in domestic and foreign academic journals and major international academic conferences, and has been included in the three indexes of SCI, EI and ISTP, and has been cited by others for more than 200 times. More than 100 patents have been applied for and authorized by many countries; Write 5 books; He won 8 prizes including Shanxi Science and Technology Progress Award and Shanxi Education Department Science and Technology Progress Award. In 2004, he was selected into the top-notch innovative talents support program for young and middle-aged college students in Shanxi Province. In 2005, the research team he led won the excellent innovation team in Shanxi Province.

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